Tetsuo Ohnishi
Affiliations: | RIKEN Center for Brain Science |
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Publications
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Balan S, Iwayama Y, Ohnishi T, et al. (2021) A loss-of-function variant in SUV39H2 identified in autism-spectrum disorder causes altered H3K9 trimethylation and dysregulation of protocadherin β-cluster genes in the developing brain. Molecular Psychiatry |
Ohnishi T, Kiyama Y, Arima-Yoshida F, et al. (2021) Cooperation of LIM domain-binding 2 (LDB2) with EGR in the pathogenesis of schizophrenia. Embo Molecular Medicine. e12574 |
Balan S, Ohnishi T, Watanabe A, et al. (2021) Role of an Atypical Cadherin Gene, Cdh23 in Prepulse Inhibition, and Implication of CDH23 in Schizophrenia. Schizophrenia Bulletin |
Wada Y, Maekawa M, Ohnishi T, et al. (2020) Peroxisome proliferator-activated receptor α as a novel therapeutic target for schizophrenia. Ebiomedicine. 103130 |
Maekawa M, Ohnishi T, Toyoshima M, et al. (2020) A potential role of fatty acid binding protein 4 in the pathophysiology of autism spectrum disorder. Brain Communications. 2: fcaa145 |
Horiuchi Y, Ichikawa T, Ohnishi T, et al. (2020) locus disruption on 4p16.1 as a risk factor for schizophrenia and bipolar disorder. Human Genome Variation. 7: 31 |
Shimamoto-Mitsuyama C, Nakaya A, Esaki K, et al. (2020) Lipid Pathology of the Corpus Callosum in Schizophrenia and the Potential Role of Abnormal Gene Regulatory Networks with Reduced Microglial Marker Expression. Cerebral Cortex (New York, N.Y. : 1991) |
Usui N, Iwata K, Miyachi T, et al. (2020) VLDL-specific increases of fatty acids in autism spectrum disorder correlate with social interaction. Ebiomedicine. 58: 102917 |
Qu Y, Zhang K, Pu Y, et al. (2020) Betaine supplementation is associated with the resilience in mice after chronic social defeat stress: a role of brain-gut-microbiota axis. Journal of Affective Disorders. 272: 66-76 |
Balan S, Ohnishi T, Watanabe A, et al. (2020) Genetic Deciphering of Prepulse Inhibition Reveals the Putative Role of an Atypical Cadherin in Schizophrenia Pathogenesis Biological Psychiatry. 87: S398 |